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Elevated Temperature Aging of Glass Fiber Reinforced Vinyl Ester and Isopthalic Polyester Composites in Water, Salt Water and Concrete Pore Solution

机译:玻璃纤维增​​强乙烯基酯和邻苯二甲酸聚酯复合材料在水,盐水和混凝土孔隙溶液中的高温老化

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摘要

In recent years, the use of fiber-reinforced vinyl ester and isophthalic polyester (isopolyester) composites in civil infrastructure has grealty increased, due to an optimum combination of desirable properties, processability, and ease of installation associated with these materials, One obstacle hidering greater acceptance of polymer composites in civil infrastructure applications is the susceptibility of the polymer matrices to degradation initiated by moisture, temperture and corrosive chemical environments. The objective of this study was to characterize chemical and physical changes in glass-fiber reinforced vinyl ester and isopolyester mateials following exposure to water,salt water and an artificial concrete pore solution. Exposures was carried out at room temperature, 40 C, 60 C, 80 C: glass transition temperature and interlaminar shear strength were monitored as a function of aging time and temperature. In general, more rapid degradation in properties was observed in conrete pore solution than either water or salt solution for both polymers. A modified arrhenius analysis was carried out on the data to determine whether any observed accerleration in degradation was valid over such a wide temperature range. Arrhenius polots for isopolyester generated by poltting In (time to reach 70 percent of original strength) vs (temperature) could be fitted with straight line for water and salt solumtion, but not for concrete pore solution. Arrhenius analyses carried out on the vinyl ester data resulted in approximately straight line fits for all three environments.

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